Lingle C, Auerbach A
J Gen Physiol. 1983 Apr;81(4):547-69. doi: 10.1085/jgp.81.4.547.
The properties of acetylcholine-activated excitatory currents on the gm1 muscle of three marine decapod crustaceans, the spiny lobsters Panulirus argus and interruptus, and the crab Cancer borealis, were examined using either noise analysis, analysis of synaptic current decays, or analysis of the voltage dependence of ionophoretically activated cholinergic conductance increases. The apparent mean channel open time (tau n) obtained from noise analysis at -80 mV and 12 degrees C was approximately 13 ms; tau n was prolonged e-fold for about every 100-mV hyperpolarization in membrane potential; tau n was prolonged e-fold for every 10 degrees C decrease in temperature. Gamma, the single-channel conductance, at 12 degrees C was approximately 18 pS and was not affected by voltage; gamma was increased approximately 2.5-fold for every 10 degrees C increase in temperature. Synaptic currents decayed with a single exponential time course, and at -80 mV and 12 degrees C, the time constant of decay of synaptic currents, tau ejc, was approximately 14-15 ms and was prolonged e-fold about every 140-mV hyperpolarization; tau ejc was prolonged about e-fold for every 10 degrees C decrease in temperature. The voltage dependence of the amplitude of steady-state cholinergic currents suggests that the total conductance increase produced by cholinergic agonists is increased with hyperpolarization. Compared with glutamate channels found on similar decapod muscles (see the following article), the acetylcholine channels stay open longer, conduct ions more slowly, and are more sensitive to changes in the membrane potential.
利用噪声分析、突触电流衰减分析或离子电泳激活的胆碱能电导增加的电压依赖性分析,研究了三种海洋十足目甲壳动物(多刺龙虾Panulirus argus和Panulirus interruptus以及螃蟹Cancer borealis)的gm1肌肉上乙酰胆碱激活的兴奋性电流的特性。在-80 mV和12℃下通过噪声分析获得的表观平均通道开放时间(tau n)约为13毫秒;膜电位每超极化约100 mV,tau n延长e倍;温度每降低10℃,tau n延长e倍。单通道电导Gamma在12℃时约为18 pS,不受电压影响;温度每升高10℃,Gamma增加约2.5倍。突触电流以单指数时间进程衰减,在-80 mV和12℃时,突触电流的衰减时间常数tau ejc约为14 - 15毫秒,膜电位每超极化约140 mV,tau ejc延长e倍;温度每降低10℃,tau ejc延长约e倍。稳态胆碱能电流幅度的电压依赖性表明,胆碱能激动剂产生的总电导增加随超极化而增加。与在类似十足目肌肉上发现的谷氨酸通道相比(见下一篇文章),乙酰胆碱通道开放时间更长,离子传导更慢,并且对膜电位变化更敏感。